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一种基于结构的AP-3包被囊泡形成起始机制。

A structure-based mechanism for initiation of AP-3 coated vesicle formation.

作者信息

Begley Matthew, Aragon Mahira, Baker Richard W

机构信息

Department of Biochemistry and Biophysics, UNC Chapel Hill School of Medicine; Chapel Hill, NC 27516, USA.

New York Structural Biology Center; New York, NY 10027, USA.

出版信息

bioRxiv. 2024 Jun 5:2024.06.05.597630. doi: 10.1101/2024.06.05.597630.

Abstract

Adaptor protein complex 3 (AP-3) mediates cargo sorting from endosomes to lysosomes and lysosome-related organelles. Recently, it was shown that AP-3 is in a constitutively open, active conformation compared to the related AP-1 and AP-2 coat complexes, which are inactive until undergoing large conformational changes upon membrane recruitment. How AP-3 is regulated is therefore an open question. To understand the mechanism of AP-3 membrane recruitment and activation, we reconstituted the core of human AP-3 and determined multiple structures in the soluble and membrane-bound states using electron cryo-microscopy (cryo-EM). Similar to yeast AP-3, human AP-3 is in a constitutively open conformation, with the cargo-binding domain of the μ3 subunit conformationally free. To reconstitute AP-3 activation by the small GTPase Arf1, we used lipid nanodiscs to build Arf1-AP-3 complexes on membranes and determined three structures that show the stepwise conformational changes required for formation of AP-3 coated vesicles. First, membrane-recruitment is driven by one of two predicted Arf1 binding sites on AP-3. In this conformation, AP-3 is flexibly tethered to the membrane and its cargo binding domain remains conformationally dynamic. Second, cargo binding causes AP-3 to adopt a fixed position and rigidifies the complex, which stabilizes binding for a second Arf1 molecule. Finally, binding of the second Arf1 molecule provides the template for AP-3 dimerization, providing a glimpse into the first step of coat polymerization. We propose coat polymerization only occurs after cargo engagement, thereby linking cargo sorting with assembly of higher order coat structures. Additionally, we provide evidence for two amphipathic helices in AP-3, suggesting that AP-3 contributes to membrane deformation during coat assembly. In total, these data provide evidence for the first stages of AP-3 mediated vesicle coat assembly.

摘要

衔接蛋白复合物3(AP-3)介导从内体到溶酶体以及溶酶体相关细胞器的货物分选。最近研究表明,与相关的AP-1和AP-2包被复合物相比,AP-3处于组成型开放的活性构象,AP-1和AP-2包被复合物在膜募集时经历大的构象变化之前是无活性的。因此,AP-3如何被调节仍是一个悬而未决的问题。为了理解AP-3膜募集和激活的机制,我们重构了人AP-3的核心,并使用冷冻电子显微镜(cryo-EM)确定了其可溶性和膜结合状态下的多个结构。与酵母AP-3类似,人AP-3处于组成型开放构象,μ3亚基的货物结合结构域在构象上是自由的。为了重构小GTP酶Arf1对AP-3的激活作用,我们使用脂质纳米盘在膜上构建Arf1-AP-3复合物,并确定了三个结构,这些结构展示了形成AP-3包被囊泡所需的逐步构象变化。首先,膜募集由AP-3上两个预测的Arf1结合位点之一驱动。在这种构象中,AP-3灵活地拴系在膜上,其货物结合结构域在构象上仍然是动态的。其次,货物结合使AP-3采取固定位置并使复合物刚性化,这稳定了与第二个Arf1分子的结合。最后,第二个Arf1分子的结合为AP-3二聚化提供了模板,让我们得以一窥包被聚合的第一步。我们提出包被聚合仅在货物结合后发生,从而将货物分选与高阶包被结构的组装联系起来。此外,我们提供了AP-3中两个两亲性螺旋的证据,表明AP-3在包被组装过程中有助于膜变形。总的来说,这些数据为AP-3介导的囊泡包被组装的第一阶段提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65de/11185636/fc92abf6e283/nihpp-2024.06.05.597630v1-f0001.jpg

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